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黏液纤毛运输的平面模型:黏液黏弹性的影响

A planar model for mucociliary transport: effect of mucus viscoelasticity.

作者信息

King M, Agarwal M, Shukla J B

机构信息

Pulmonary Defense Group, University of Alberta, Edmonton, Canada.

出版信息

Biorheology. 1993 Jan-Feb;30(1):49-61.

PMID:8374102
Abstract

A planar two-layer fluid model is proposed to study the transport of mucus in the respiratory tracts due to cilia beating and air motion by considering mucus as a viscoelastic fluid. The effect of air motion due to forced expiration and other processes is considered by prescribing shear stress at the mucus-air interface. It is shown that the transport of mucus increases as the pressure drop, shear stress due to air motion and the velocity generated by cilia tips and the serous sublayer increase. Mucus transport also increases as the shear modulus of elasticity decreases. This property is effective only in the presence of pressure drop or air motion. It is noted that the effect of gravity is similar to pressure drop. It is observed that mucus transport decreases as the viscosity of serous layer fluid increases, but any increase at high values of mucus viscosity does not seem to affect the mucus transport. It is also found that for a given total depth of serous and mucus layers, there exists a serous fluid layer thickness for which the mucus transport is maximum. The functional dependence of mucus transport predicted by the model is discussed in relation to experimental observations.

摘要

提出了一种平面双层流体模型,通过将黏液视为黏弹性流体,研究由于纤毛摆动和空气流动导致的呼吸道中黏液的传输。通过规定黏液-空气界面处的剪切应力,考虑了强制呼气和其他过程引起的空气流动的影响。结果表明,随着压降、空气流动引起的剪切应力以及纤毛尖端和浆液亚层产生的速度增加,黏液的传输增加。随着剪切弹性模量的降低,黏液传输也会增加。该特性仅在存在压降或空气流动时有效。需要注意的是,重力的影响与压降类似。观察到随着浆液层流体黏度的增加,黏液传输减少,但在高黏液黏度值时的任何增加似乎都不会影响黏液传输。还发现,对于给定的浆液层和黏液层总深度,存在一个使黏液传输最大的浆液流体层厚度。结合实验观察结果讨论了该模型预测的黏液传输的函数依赖性。

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